论文标题

毫米基本泡沫的粘弹性的局部起源

Local origin of the visco-elasticity of a millimetric elementary foam

论文作者

Bussonnière, Adrien, Cantat, Isabelle

论文摘要

液体泡沫表现出令人惊讶的高粘度,高于其每个阶段。通过在液相中调用剪切的几何限制或界面粘度的影响,这种耗散增强已被合理化了。然而,仍然缺乏耗散及其机制的精确定位。为此,我们同时监视了五膜组件的局部流速度,膜厚度和表面张力的演变,这些膜组件是由不同的受控变形引起的。这些测量值使我们能够为该泡沫基本砖建立本地构成关系。我们首先表明,对于我们的毫米泡沫膜,这部电影的主要部分具有纯粹的弹性,可逆的行为,因此排除了界面粘度以解释观察到的耗散。然后,我们突出了弯月扫描的一般挫败感,控制着邻居膜之间的界面转移,并导致靠近半月板的散装剪切流的定位。开发了这些小剪切区域中表面活性剂转运的模型。这与实验非常吻合,并证明大多数耗散位置位于这些领域。这些剪切区域的长度由溶液的物理化学特性确定,在大型气泡状态之间设置了膜主要是拉伸和压缩的大气泡状态,以及它们剪切的小气泡状态。最后,我们讨论参数范围,其中可以基于这些局部结果建立泡沫粘度模型。

Liquid foam exhibits surprisingly high viscosity, higher than each of its phases. This dissipation enhancement has been rationalized by invoking either a geometrical confinement of the shear in the liquid phase, or the influence of the interface viscosity. However, a precise localization of the dissipation, and its mechanism, at the bubble scale is still lacking. To this aim, we simultaneously monitored the evolution of the local flow velocity, film thickness and surface tension of a five films assembly, induced by different controlled deformations. These measurements allow us to build local constitutive relations for this foam elementary brick. We first show that, for our millimetric foam films, the main part of the film has a purely elastic, reversible behavior, thus ruling out the interface viscosity to explain the observed dissipation. We then highlight a generic frustration at the menisci, controlling the interface transfer between neighbor films and resulting in the localization of a bulk shear flow close to the menisci. A model accounting for surfactant transport in these small sheared regions is developed. It is in good agreement with the experiment, and demonstrate that most of the dissipation is localized in these domains. The length of these sheared regions, determined by the physico-chemical properties of the solution, sets a transition between a large bubble regime in which the films are mainly stretched and compressed, and a small bubble regime in which they are sheared. Finally, we discuss the parameter range where a model of foam viscosity could be built on the basis of these local results.

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